Provided are a display device and a manufacturing method thereof. The display device includes an organic light-emitting display panel and a fingerprint identification assembly disposed on a non-light-emitting display side of the organic light-emitting display panel. The fingerprint identification assembly includes a first substrate, a fingerprint identification unit and a light-shielding structure. The fingerprint identification unit and the light-shielding structure are disposed on a same side of the first substrate. The light-shielding structure is disposed between the fingerprint identification unit and the organic light-emitting display panel; the light-shielding structure includes at least two light-shielding layers, each light-shielding layer includes light-transmissive portions and at least one light-shielding portion, and the light-transmissive portions are at least partially surrounded by the light-shielding portion; in a direction perpendicular to the first substrate, positions of light-transmissive portions in one light-shielding layer are in one-to-one correspondence with positions of light-transmissive portions in another one light-shielding layer.
|
15. A manufacturing method of a display device, comprising:
providing an organic light-emitting display panel;
providing a first substrate;
forming a fingerprint identification unit and a light-shielding structure on a side of the first substrate; and
securing the first substrate on which the fingerprint identification unit and the light-shielding structure are formed to a non-light-emitting display side of the organic light-emitting display, panel;
wherein the light-shielding structure is disposed between the fingerprint identification unit and the organic light-emitting display panel; the light-shielding structure comprises at least two light-shielding layers, each of the at least two light-shielding layers comprises light-transmissive portions and at least one light-shielding portion, and the light-transmissive portions are at least partially surrounded by the at least one light-shielding portion; and in a direction perpendicular to the first substrate, positions of light-transmissive portions in one of the at least two light-shielding layers are in one-to-one correspondence with positions of light-transmissive portions in another one of the at least two light-shielding layers; and
wherein forming the fingerprint identification unit and the light-shielding structure on the side of the first substrate comprises: forming the fingerprint identification unit on the side of the first substrate, and sequentially forming a first dielectric layer, a first light-shielding layer, a second dielectric layer, a second light-shielding layer, a third dielectric layer, a third light-shielding layer on a side of the fingerprint identification unit facing away from the first substrate.
19. A manufacturing method of a display device, comprising:
providing an organic light-emitting display panel;
providing a first substrate;
forming a fingerprint identification unit on a side of the first substrate;
providing a second substrate;
forming a plurality of first grooves on the second substrate;
forming a lens array in the plurality of first grooves;
forming a light-shielding structure on a side of the second substrate;
bonding, by a second encapsulant which is annular in shape, the side of the second substrate on which the light-shielding structure is formed to the side of the first substrate on which the fingerprint identification unit is formed; and
securing the first substrate on which the fingerprint identification unit and the light-shielding structure are formed to a non-light-emitting display side of the organic light-emitting display panel;
wherein the light-shielding structure comprises at least two light-shielding layers, each of the at least two light-shielding layers comprises light-transmissive portions and at least one light-shielding portion, and the light-transmissive portions are at least partially surrounded by the at least one light-shielding portion; and in a direction perpendicular to the first substrate, positions of light-transmissive portions in one of the at least two light-shielding layers are in one-to-one correspondence with positions of light-transmissive portions in another one of the at least two light-shielding layers; the lens array is disposed between the light-shielding structure and the organic light-emitting display panel; and the lens array comprises a plurality of converging lens, and in the direction perpendicular to the first substrate, each of the plurality of converging lenses covers at least one of the light-transmissive portions in a same one of the at least two light-shielding layers.
1. A display device, comprising: an organic light-emitting display panel and a fingerprint identification assembly disposed on a non-light-emitting display side of the organic light-emitting display panel;
wherein the fingerprint identification assembly comprises a first substrate, a fingerprint identification unit and a light-shielding structure, and the fingerprint identification unit and the light-shielding structure are disposed on a same side of the first substrate;
wherein the light-shielding structure is disposed between the fingerprint identification unit and the organic light-emitting display panel; the light-shielding structure comprises at least two light-shielding layers, each of the at least two light-shielding layers comprises light-transmissive portions and at least one light-shielding portion, and the light-transmissive portions are at least partially surrounded by the at least one light-shielding portion; and in a direction perpendicular to the first substrate, positions of light-transmissive portions in one of the at least two light-shielding layers are in one-to-one correspondence with positions of light-transmissive portions in another one of the at least two light-shielding layers;
wherein the at least two light-shielding layers comprise a first light-shielding layer, a second light-shielding layer, and a third light-shielding layer; the second light-shielding layer is disposed between the first light-shielding layer and the third light-shielding layer; and the first light-shielding layer is disposed between the second light-shielding layer and the fingerprint identification unit; and
wherein the display device further comprises: a first dielectric layer, a second dielectric laver, and a third dielectric layer, wherein the first dielectric layer is disposed between the fingerprint identification unit and the first light-shielding layer, the second dielectric layer is disposed between the first light-shielding layer and the second light-shielding layer, and the third dielectric layer is disposed between the second light-shielding layer and the third light-shielding laver.
2. The display device of
3. The display device of
wherein the lens array comprises a plurality of converging lenses, and in the direction perpendicular to the first substrate, each of the plurality of converging lenses covers at least one of the light-transmissive portions in a same one of the at least two light-shielding layers.
4. The display device of
5. The display device of
each of the light-transmissive portions is circular in shape and has a diameter of D2, and 2 μm≤D2≤5 μm.
6. The display device of
7. The display device of
8. The display device of
wherein the lens array comprises a plurality of converging lens, and in the direction perpendicular to the first substrate, each of the plurality of converging lenses covers at least one of the light-transmissive portions in a same one of the at least two light-shielding layers; and
wherein the lens array is integrated on the first substrate.
9. The display device of
a second substrate disposed between the light-shielding structure and the organic light-emitting display panel, wherein the second substrate comprises a plurality of first grooves, and each of the plurality of converging lenses is disposed in a respective one of the plurality of first grooves.
10. The display device of
wherein in the direction perpendicular to the first substrate, the first encapsulant is disposed between the second substrate and the light-shielding structure.
11. The display device of
wherein in the direction perpendicular to the first substrate, the second encapsulant is disposed between the light-shielding structure and the fingerprint identification unit.
12. The display device of
13. The display device of
wherein the lens array comprises a plurality of converging lens, and in the direction perpendicular to the first substrate, each of the plurality of converging lenses covers at least one of the light-transmissive portions in a same one of the at least two light-shielding layers; and
wherein the first substrate comprises a plurality of second grooves, and each of the plurality of converging lens is disposed in a respective one of the plurality of second grooves.
14. The display device of
in the direction perpendicular to the first substrate, a sum of a thickness of the first dielectric layer, a thickness of the second dielectric layer and a thickness of the third dielectric layer is greater than or equal to 9 μm.
16. The manufacturing method of
forming a lens array on a side of the light-shielding structure facing away from the first substrate;
wherein the lens array is disposed between the light-shielding structure and the organic light-emitting display panel, the lens array comprises a plurality of converging lens, and in the direction perpendicular to the first substrate, each of the plurality of converging lenses covers at least one of the light-transmissive portions in a same one of the at least two light-shielding layers.
17. The manufacturing method of
providing a second substrate;
forming a plurality of first grooves on the second substrate;
forming a lens array in the plurality of first grooves; and
bonding, by a first encapsulant which is annular in shape, the second substrate on which the lens array is formed to the side of the first substrate on which the light-shielding structure is formed;
wherein the lens array is disposed between the light-shielding structure and the organic light-emitting display panel, the lens array comprises a plurality of converging lens, and in the direction perpendicular to the first substrate, each of the plurality of converging lenses covers at least one of the light-transmissive portions in a same one of the at least two light-shielding layers.
18. The manufacturing method of
forming a plurality of second grooves on the first substrate; and
forming a lens array in the plurality of second grooves;
wherein the lens array is disposed between the light-shielding structure and the organic light-emitting display panel, the lens array comprises a plurality of converging lens, and in the direction perpendicular to the first substrate, each of the plurality of converging lenses covers at least one of the light-transmissive portions in a same one of the at least two light-shielding layers.
|
This application claims priority to Chinese Patent Application No. 202011384870.5 filed Nov. 30, 2020, the disclosure of which is incorporated herein by reference in its entirety.
The present disclosure relates to the field of display technologies and, in particular, to a display device and a manufacturing method thereof.
A fingerprint of anybody is inherent and unique. With the development of science and technology, there are various display devices having fingerprint identification functions in the market. Such display devices include mobile phones, tablet computers and smart wearable equipment. In this way, a user only needs to touch a particular region of a display device having a fingerprint identification function with a figure before operating this device, and a permission of the user can be verified through identification of a fingerprint identification unit, simplifying the permission verification process.
At present, products based on optical fingerprint identification technologies are mainly applied to organic light-emitting display panels. A fingerprint identifier is usually externally hung under the organic light-emitting display panel, and a collimating film is attached between the fingerprint identifier and the organic light-emitting display panel to ensure the quality of fingerprint identification. The cost of the existing collimating film is relatively high and the process of assembling the collimating film, the fingerprint identifier and the organic light-emitting display panel is complicated.
The present disclosure provides a display device and a manufacturing method thereof, reducing the cost of manufacturing the display device and simplifying the process flow of manufacturing the display device.
In a first aspect, an embodiment of the present disclosure provides a display device. The display device includes an organic light-emitting display panel and a fingerprint identification assembly disposed on a non-light-emitting display side of the organic light-emitting display panel.
The fingerprint identification assembly includes a first substrate, a fingerprint identification unit and a light-shielding structure, and the fingerprint identification unit and the light-shielding structure are disposed on a same side of the first substrate.
The light-shielding structure is disposed between the fingerprint identification unit and the organic light-emitting display panel; the light-shielding structure includes at least two light-shielding layers, each of the at least two light-shielding layers includes light-transmissive portions and at least one light-shielding portion, and the light-transmissive portions are at least partially surrounded by the at least one light-shielding portion; and in a direction perpendicular to the first substrate, positions of light-transmissive portions in one of the at least two light-shielding layers are in one-to-one correspondence with positions of light-transmissive portions in another one of the at least two light-shielding layers.
In a second aspect, an embodiment of the present disclosure provides a manufacturing method of a display device. The method includes steps described below.
An organic light-emitting display panel is provided.
A first substrate is provided.
A fingerprint identification unit and a light-shielding structure are formed on a side of the first substrate.
The first substrate on which the fingerprint identification unit and the light-shielding structure are formed is secured to a non-light-emitting display side of the organic light-emitting display panel.
The light-shielding structure includes at least two light-shielding layers, each of the at least two light-shielding layers includes light-transmissive portions and at least one light-shielding portion, and the light-transmissive portions are at least partially surrounded by the at least one light-shielding portion; and in a direction perpendicular to the first substrate, positions of light-transmissive portions in one of the at least two light-shielding layers are in one-to-one correspondence with positions of light-transmissive portions in another one of the at least two light-shielding layers.
In a third aspect, an embodiment of the present disclosure provides a manufacturing method of a display device. The method includes steps described blow.
An organic light-emitting display panel is provided.
A first substrate is provided.
A fingerprint identification unit is formed on a side of the first substrate.
A second substrate is provided.
A plurality of first grooves are formed on the second substrate.
A lens array is formed in the plurality of first grooves.
A light-shielding structure is formed on a side of the second substrate.
The side of the second substrate on which the light-shielding structure is formed is bonded to the side of the first substrate on which the fingerprint identification unit is formed by a second encapsulant which is annular in shape.
The first substrate on which the fingerprint identification unit and the light-shielding structure are formed is secured to a non-light-emitting display side of the organic light-emitting display panel.
The light-shielding structure includes at least two light-shielding layers, each of the at least two light-shielding layers includes light-transmissive portions and at least one light-shielding portion, and the light-transmissive portions are at least partially surrounded by the at least one light-shielding portion; and in a direction perpendicular to the first substrate, positions of light-transmissive portions in one of the at least two light-shielding layers are in one-to-one correspondence with positions of light-transmissive portions in another one of the at least two light-shielding layers. The lens array is disposed between the light-shielding structure and the organic light-emitting display panel. The lens array includes a plurality of converging lens, and in the direction perpendicular to the first substrate, each of the plurality of converging lenses covers at least one of the light-transmissive portions in a same one of the at least two light-shielding layers.
According to the display device provided in the embodiment of the present disclosure, the light-shielding structure is disposed in the fingerprint identification assembly, and the fingerprint identification unit and the light-shielding structure are disposed on the same side of the first substrate and are integrated together, so that a collimating film is not required to be purchased separately, the cost of manufacturing the display device is reduced, and the process flow of manufacturing the display device is simplified.
Hereinafter the present disclosure will be further described in detail in conjunction with drawings and embodiments. It is to be understood that the embodiments set forth herein are intended to explain the present disclosure and not to limit the present disclosure. Additionally, it is to be noted that for ease of description, merely part, not all, of the structures related to the present disclosure are illustrated in the drawings.
In the field of display technologies, a collimating film may be integrated in a liquid crystal display panel in order to improve the degree of integration. An organic light-emitting display panel has a more complicated driver circuit. If the collimating film is integrated inside the organic light-emitting display panel, the aperture ratio of the organic light-emitting display panel will be sacrificed. Therefore, an independent fingerprint identifier and an independent collimating film are usually externally hung under the organic light-emitting display panel. The cost of the existing collimating film is relatively high. The process of bonding and assembling the collimating film, the fingerprint identifier and the organic light-emitting display panel is complicated.
With continued reference to
According to the display device provided in the embodiment of the present disclosure, the light-shielding structure 13 is disposed in the fingerprint identification assembly 100, and the fingerprint identification unit 12 and the light-shielding structure 13 are disposed on the same side of the first substrate 11 and are integrated together, so that the collimating film is not required to be purchased separately, the cost of manufacturing the display device is reduced, and the process flow of manufacturing the display device is simplified.
In an embodiment, referring to
Exemplarily, the light-shielding structure 13 includes a first light-shielding layer 131 and a second light-shielding layer 132, and the first light-shielding layer 131 may have a plurality of light-transmissive holes arranged in an array, a plurality of light-transmissive strips extending in the first direction X, or a plurality of light-transmissive strips extending in the second direction Y. The second light-shielding layer 132 may have a plurality of light-transmissive holes arranged in an array, a plurality of light-transmissive strips extending in the first direction X, or a plurality of light-transmissive strips extending in the second direction Y. The first light-shielding layer 131 and the second light-shielding layer 132 may have the same structure or different structures.
In an embodiment, referring to
In an embodiment, referring to
In an embodiment, referring to
Exemplarily, referring to
Exemplarily, referring to
Exemplarily, referring to
Exemplarily, referring to
In an embodiment, referring to any one of
In an embodiment, referring to
Exemplarily, referring to
Exemplarily, referring to
In an embodiment, referring to
Exemplarily, referring to
In an embodiment, referring to
Exemplarily, referring to
Exemplarily, referring to
Exemplarily, referring to
Exemplarily, referring to
In step S101, an organic light-emitting display panel 200 is provided.
In step S102, a first substrate 11 is provided.
In step S103, a fingerprint identification unit 12 and a light-shielding structure 13 are formed on a side of the first substrate 11.
The light-shielding structure 13 includes at least two light-shielding layers 130. The light-shielding layer 130 includes a light-transmissive portion 1302 and a light-shielding portion 1301. The light-transmissive portion 1302 is at least partially surrounded by the light-shielding portion 1301. In a direction perpendicular to the first substrate 11, positions of light-transmissive portions 1302 in one light-shielding layer 130 are in one-to-one correspondence with positions of light-transmissive portions 1302 in another one light-shielding layer 130.
In step S104, the first substrate 11 on which the fingerprint identification unit 12 and the light-shielding structure 13 are formed is secured to a non-light-emitting display side of the organic light-emitting display panel 200.
In this step, in an implementation, the side of the first substrate 11 on which the fingerprint identification unit 12 and the light-shielding structure 13 are formed may be bonded toward the non-light-emitting display side of the organic light-emitting display panel 200; in another implementation, the side of the first substrate 11 facing away from the fingerprint identification unit 12 and the light-shielding structure 13 may be bonded toward the non-light-emitting display side of the organic light-emitting display panel 200.
The manufacturing method provided in the embodiment of the present disclosure is used for forming the display device in the preceding embodiment. In the manufacturing method, the fingerprint identification unit 12 and the light-shielding structure 13 are disposed on the same side of the first substrate 11 and are integrated together, so that the collimating film is not required to be purchased separately, the cost of manufacturing the display device is reduced, and the process flow of manufacturing the display device is simplified. It is to be noted that since the organic light-emitting display panel 200 is independently manufactured and formed, and the fingerprint identification unit 12 and the light-shielding structure 13 are finally integrated on the non-light-emitting display side of the organic light-emitting display panel 200 in a manner of external hanging, the step S101 of providing the organic light-emitting display panel 200 may be performed at any step before the step S104 in the manufacturing method of the display device.
In step S201, an organic light-emitting display panel 200 is provided.
In step S202, a first substrate 11 is provided.
In step S203, a fingerprint identification unit 12 is formed on a side of the first substrate 11.
Exemplarily, referring to
In step S204, a light-shielding structure 13 is formed on the side of the fingerprint identification unit 12 facing away from the first substrate 11.
Exemplarily, referring to
In step S205, a lens array 14 is formed on a side of the light-shielding structure 13 facing away from the first substrate 11.
Exemplarily, referring to
In step S206, the first substrate 11 on which the fingerprint identification unit 12 and the light-shielding structure 13 are formed is secured to a non-light-emitting display side of the organic light-emitting display panel 200.
Exemplarily, referring to
In step S301, an organic light-emitting display panel 200 is provided.
In step S302, a first substrate 11 is provided.
In step S303, a fingerprint identification unit 12 is formed on a side of the first substrate 11.
In step S304, a light-shielding structure 13 is formed on the side of the fingerprint identification unit 12 facing away from the first substrate 11.
In step S305, a second substrate 15 is provided.
In step S306, a plurality of first grooves 151 are formed on the second substrate 15.
In step S307, a lens array 14 is formed in the plurality of first grooves 151.
Exemplarily, referring to
In step S308, the second substrate 15 on which the lens array 14 is formed is bonded to the side of the first substrate 11 on which the light-shielding structure 13 is formed by a first encapsulant 161 which is annular in shape.
Exemplarily, referring to
Exemplarily, in an implementation, the first encapsulant 161 may be formed on the first substrate 11 and is used to bond the first substrate 11 and the second substrate 15 together. In another implementation, the first encapsulant 161 may be formed on the second substrate 15 and is used to bond the first substrate 11 and the second substrate 15 together.
Exemplarily, referring to
In step S309, the first substrate 11 on which the fingerprint identification unit 12 and the light-shielding structure 13 are formed is secured to a non-light-emitting display side of the organic light-emitting display panel 200.
Exemplarily, referring to
It is to be noted that the first substrate 11 and the second substrate 12 are two independent base substrates. The step of providing the first substrate 11 and forming a structure on the first substrate 11 does not interfere with the step of providing the second substrate 15 and forming a structure on the second substrate 15. In chronological order, these two steps may be performed sequentially or simultaneously.
In step S401, an organic light-emitting display panel 200 is provided.
In step S402, a first substrate 11 is provided.
In step S403, a plurality of second grooves 111 are formed on the first substrate 11.
In step S404, a lens array 14 is formed in the plurality of second grooves 111.
Exemplarily, referring to
In step S405, a light-shielding structure 13 is formed on a side of the first substrate 11.
Exemplarily, referring to
The light-shielding structure 13 includes the first light-shielding layer 131 and the second light-shielding layer 132. A light-shielding layer 130 in the light-shielding structure 13 includes a light-transmissive portion 1302 and a light-shielding portion 1301. The light-transmissive portion 1302 is at least partially surrounded by the light-shielding portion 1301. In a direction perpendicular to the first substrate 11, positions of light-transmissive portions 1302 in one light-shielding layer 130 are in one-to-one correspondence with positions of light-transmissive portions 1302 in another one light-shielding layer 130. The lens array 14 includes a plurality of converging lenses 140, and in the direction perpendicular to the first substrate 11, the converging lens 140 covers at least one light-transmissive portion 1302 in a same light-shielding layer 130.
Exemplarily, referring to
In step S406, a fingerprint identification unit 12 is formed on the side of the light-shielding structure 13 facing away from the first substrate 11.
Exemplarily, referring to
Exemplarily, referring to
In step S407, the first substrate 11 on which the fingerprint identification unit 12 and the light-shielding structure 13 are formed is secured to a non-light-emitting display side of the organic light-emitting display panel 200.
Exemplarily, referring to
In step S501, an organic light-emitting display panel 200 is provided.
In step S502, a first substrate 11 is provided.
In step S503, a fingerprint identification unit 12 is formed on a side of the first substrate 11.
Exemplarily, referring to
In step S504, a second substrate 15 is provided.
In step S505, a plurality of first grooves 151 are formed on the second substrate 15.
In step S506, a lens array 14 is formed in the plurality of first grooves 151.
In step S507, a light-shielding structure 13 is formed on a side of the second substrate 15.
Exemplarily, referring to
The light-shielding structure 13 includes the first light-shielding layer 131 and the second light-shielding layer 132. A light-shielding layer 130 in the light-shielding structure 13 includes a light-transmissive portion 1302 and a light-shielding portion 1301. The light-transmissive portion 1302 is at least partially surrounded by the light-shielding portion 1301. In a direction perpendicular to the second substrate 15, positions of light-transmissive portions 1302 in one light-shielding layer 130 are in one-to-one correspondence with positions of light-transmissive portions 1302 in another one light-shielding layer 130. The lens array 14 includes a plurality of converging lenses 140, and in the direction perpendicular to the second substrate 15, the converging lens 140 covers at least one light-transmissive portion 1302 in a same light-shielding layer 130.
Exemplarily, referring to
In step S508, the side of the second substrate 15 on which the light-shielding structure 13 is formed is bonded to the side of the first substrate 11 on which the fingerprint identification unit 12 is formed by a second encapsulant 162 which is annular in shape.
Exemplarily, referring to
Exemplarily, in an implementation, the second encapsulant 162 may be formed on the first substrate 11 and is used to bond the first substrate 11 and the second substrate 15 together. In another implementation, the second encapsulant 162 may be formed on the second substrate 15 and is used to bond the first substrate 11 and the second substrate 15 together.
In step S509, the first substrate 11 on which the fingerprint identification unit 12 and the light-shielding structure 13 are formed is secured to a non-light-emitting display side of the organic light-emitting display panel 200.
Exemplarily, referring to
It is to be noted that the preceding are only embodiments of the present disclosure and the technical principles used therein. It will be understood by those skilled in the art that the present disclosure is not limited to the embodiments described herein. For those skilled in the art, various apparent modifications, adaptations, combinations and substitutions can be made without departing from the scope of the present disclosure. Therefore, while the present disclosure has been described in detail via the preceding embodiments, the present disclosure is not limited to the preceding embodiments and may include more equivalent embodiments without departing from the concept of the present disclosure. The scope of the present disclosure is determined by the scope of the appended claims.
Wu, Xiaoxiao, Liu, Bingping, Chen, Guozhao
Patent | Priority | Assignee | Title |
Patent | Priority | Assignee | Title |
10665631, | Dec 27 2018 | XIAMEN TIANMA MICRO-ELECTRONICS CO., LTD. | Display panel and display device |
20180005005, | |||
20190012555, | |||
20190019000, | |||
20190095674, | |||
CN106886767, | |||
CN110376782, | |||
TW200730801, | |||
WO2019085859, |
Executed on | Assignor | Assignee | Conveyance | Frame | Reel | Doc |
Mar 03 2021 | LIU, BINGPING | XIAMEN TIANMA MICRO-ELECTRONICS CO , LTD | ASSIGNMENT OF ASSIGNORS INTEREST SEE DOCUMENT FOR DETAILS | 055614 | /0167 | |
Mar 03 2021 | WU, XIAOXIAO | XIAMEN TIANMA MICRO-ELECTRONICS CO , LTD | ASSIGNMENT OF ASSIGNORS INTEREST SEE DOCUMENT FOR DETAILS | 055614 | /0167 | |
Mar 03 2021 | CHEN, GUOZHAO | XIAMEN TIANMA MICRO-ELECTRONICS CO , LTD | ASSIGNMENT OF ASSIGNORS INTEREST SEE DOCUMENT FOR DETAILS | 055614 | /0167 | |
Mar 16 2021 | XIAMEN TIANMA MICRO-ELECTRONICS CO., LTD. | (assignment on the face of the patent) | / |
Date | Maintenance Fee Events |
Mar 16 2021 | BIG: Entity status set to Undiscounted (note the period is included in the code). |
Date | Maintenance Schedule |
Sep 06 2025 | 4 years fee payment window open |
Mar 06 2026 | 6 months grace period start (w surcharge) |
Sep 06 2026 | patent expiry (for year 4) |
Sep 06 2028 | 2 years to revive unintentionally abandoned end. (for year 4) |
Sep 06 2029 | 8 years fee payment window open |
Mar 06 2030 | 6 months grace period start (w surcharge) |
Sep 06 2030 | patent expiry (for year 8) |
Sep 06 2032 | 2 years to revive unintentionally abandoned end. (for year 8) |
Sep 06 2033 | 12 years fee payment window open |
Mar 06 2034 | 6 months grace period start (w surcharge) |
Sep 06 2034 | patent expiry (for year 12) |
Sep 06 2036 | 2 years to revive unintentionally abandoned end. (for year 12) |